Open Journal of Fluid Dynamics

Open Journal of Fluid Dynamics

ISSN Print: 2165-3852
ISSN Online: 2165-3860
www.scirp.net/journal/ojfd
E-mail: [email protected]
"Comparison of RANS and LES in the Prediction of Airflow Field over Steep Complex Terrain"
written by Takanori Uchida, Graham Li,
published by Open Journal of Fluid Dynamics, Vol.8 No.3, 2018
has been cited by the following article(s):
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[12] Wind and storm damage: From Meteorology to Impacts
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[15] Wind field characteristics over hilly and complex terrain in turbulent boundary layers
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[16] A New Wind Turbine CFD Modeling Method Based on a Porous Disk Approach for Practical Wind Farm Design
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[17] Effects of Inflow Shear on Wake Characteristics of Wind-Turbines over Flat Terrain
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[18] Numerical Investigation of Stable Stratification Effects on Wind Resource Assessment in Complex Terrain
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[19] New Assessment Scales for Evaluating the Degree of Risk of Wind Turbine Blade Damage Caused by Terrain-Induced Turbulence
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[20] Wind Condition Analysis of Japanese Rural Landscapes in the 19th Century: A Case Study of Kichijoji Village in Musashino Upland
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[23] A Large-Eddy Simulation-Based Assessment of the Risk of Wind Turbine Failures Due to Terrain-Induced Turbulence over a Wind Farim inComplex Terrain
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[24] Reproduction of Local Strong Wind Area Induced in the Downstream of Small-Scale Terrain by Computational Fluid Dynamic (CFD) Approach
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[25] Numerical Investigation of Terrain-Induced Turbulence in Complex Terrain by Large-Eddy Simulation (LES) Technique
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[26] Large-Eddy Simulation of Airflow over a Steep, Three-Dimensional Isolated Hill with Multi-GPUs Computing
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[27] CRediT Author Statement Weicheng Hu: Investigation, Formal analysis, Software, Validation, Funding acquisition. Qingshan Yang: Conceptualization …
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